Krone Mary Griffin, Baumketner Andrij, Bernstein Summer L, Wyttenbach Thomas, Lazo Noel D, Teplow David B, Bowers Michael T, Shea Joan-Emma
Department of Chemistry and Biochemistry, University of California, Santa Barbara, CA 93106-9510, USA.
J Mol Biol. 2008 Aug 1;381(1):221-8. doi: 10.1016/j.jmb.2008.05.069. Epub 2008 Jun 4.
The effect of single amino acid substitutions associated with the Italian (E22K), Arctic (E22G), Dutch (E22Q) and Iowa (D23N) familial forms of Alzheimer's disease and cerebral amyloid angiopathy on the structure of the 21-30 fragment of the Alzheimer amyloid beta-protein (Abeta) is investigated by replica-exchange molecular dynamics simulations. The 21-30 segment has been shown in our earlier work to adopt a bend structure in solution that may serve as the folding nucleation site for Abeta. Our simulations reveal that the 24-28 bend motif is retained in all E22 mutants, suggesting that mutations involving residue E22 may not affect the structure of the folding nucleation site of Abeta. Enhanced aggregation in Abeta with familial Alzheimer's disease substitutions may result from the depletion of the E22-K28 salt bridge, which destabilizes the bend structure. Alternately, the E22 mutations may affect longer-range interactions outside the 21-30 segment that can impact the aggregation of Abeta. Substituting at residue D23, on the other hand, leads to the formation of a turn rather than a bend motif, implying that in contrast to E22 mutants, the D23N mutant may affect monomer Abeta folding and subsequent aggregation. Our simulations suggest that the mechanisms by which E22 and D23 mutations affect the folding and aggregation of Abeta are fundamentally different.
通过复制交换分子动力学模拟,研究了与意大利型(E22K)、北极型(E22G)、荷兰型(E22Q)和爱荷华型(D23N)家族性阿尔茨海默病及脑淀粉样血管病相关的单氨基酸取代对阿尔茨海默病淀粉样β蛋白(Aβ)21 - 30片段结构的影响。在我们早期的工作中已表明,21 - 30片段在溶液中会形成一种弯曲结构,该结构可能作为Aβ折叠成核位点。我们的模拟结果显示,所有E22突变体中24 - 28弯曲基序均得以保留,这表明涉及E22残基的突变可能不会影响Aβ折叠成核位点的结构。携带家族性阿尔茨海默病取代的Aβ中增强的聚集现象可能源于E22 - K28盐桥的缺失,这会使弯曲结构不稳定。另外,E22突变可能会影响21 - 30片段之外的长程相互作用,进而影响Aβ的聚集。另一方面,在D23残基处进行取代会导致形成一个转角而非弯曲基序,这意味着与E22突变体不同,D23N突变体可能会影响单体Aβ的折叠及随后的聚集。我们的模拟表明,E22和D23突变影响Aβ折叠和聚集的机制存在根本差异。